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Titlebook: Elastoplastic Behavior of Highly Ductile Materials; Maosheng Zheng,Zhifu Yin,Yi Wang Book 2019 Springer Nature Singapore Pte Ltd. 2019 Duc

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https://doi.org/10.1007/978-3-658-41709-3e embedding model-based analysis is addressed especially; SiC grain-reinforced Al matrix composite is taken as example to show the details of thermal stress distribution and evolution during temperature change particularly.
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Solutions to the Typical Problem of Elastoplasticity,Cartesian coordinates and polar coordinates, etc., are presented first; then, elastoplastic analysis and plastic limit analysis of thick-walled cylinders, elastoplastic bending of beams, and stress analysis of tube under uneven external load, etc., are presented.
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Transfer and Mitigation of Stress Concentration at the Root of a Notch for Highly Ductile Materialsf stress concentration in the structure consisting of high ductile material; the elastic–plastic solution for a notched component and the slip-line field approach formulated in plastic mechanics are combined to perform the study.
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Elastoplastic Problems in the Manufacturing Process of Bimetallic Composite Tubes,ssure and residual stress in the relevant process are briefly presented; the cone-head size effect on the interfacial bonding strength of bimetallic composite tube produced by drawing method is displayed as well. Plane strain assumption and elastic–perfectly plastic material model are employed in the derivation.
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https://doi.org/10.1007/978-981-15-0906-3Ductile materials; Elastoplastic behavior; Plastic buckling; Strain hardening; Fatigue life assessment; S
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978-981-15-0908-7Springer Nature Singapore Pte Ltd. 2019
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Western Sahara and the Arab SpringCartesian coordinates and polar coordinates, etc., are presented first; then, elastoplastic analysis and plastic limit analysis of thick-walled cylinders, elastoplastic bending of beams, and stress analysis of tube under uneven external load, etc., are presented.
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